Leduc Andrew, Khoury Luke, Cantlon Joshua, Khan Saad, Slavov Nikolai
Departments of Bioengineering, Biology, Chemistry and Chemical Biology, Single Cell Proteomics Center, and Barnett Institute, Northeastern University, Boston, MA, USA.
SCIENION US Inc., Phoenix, AZ, USA.
Nat Protoc. 2024 Dec;19(12):3750-3776. doi: 10.1038/s41596-024-01033-8. Epub 2024 Aug 8.
Single-cell proteomics by mass spectrometry (MS) allows the quantification of proteins with high specificity and sensitivity. To increase its throughput, we developed nano-proteomic sample preparation (nPOP), a method for parallel preparation of thousands of single cells in nanoliter-volume droplets deposited on glass slides. Here, we describe its protocol with emphasis on its flexibility to prepare samples for different multiplexed MS methods. An implementation using the plexDIA MS multiplexing method, which uses non-isobaric mass tags to barcode peptides from different samples for data-independent acquisition, demonstrates accurate quantification of ~3,000-3,700 proteins per human cell. A separate implementation with isobaric mass tags and prioritized data acquisition demonstrates analysis of 1,827 single cells at a rate of >1,000 single cells per day at a depth of 800-1,200 proteins per human cell. The protocol is implemented by using a cell-dispensing and liquid-handling robot-the CellenONE instrument-and uses readily available consumables, which should facilitate broad adoption. nPOP can be applied to all samples that can be processed to a single-cell suspension. It takes 1 or 2 d to prepare >3,000 single cells. We provide metrics and software (the QuantQC R package) for quality control and data exploration. QuantQC supports the robust scaling of nPOP to higher plex reagents for achieving reliable and scalable single-cell proteomics.
基于质谱(MS)的单细胞蛋白质组学能够以高特异性和灵敏度对蛋白质进行定量分析。为了提高其通量,我们开发了纳米蛋白质组学样品制备方法(nPOP),这是一种用于在沉积于载玻片上的纳升级液滴中并行制备数千个单细胞的方法。在此,我们描述该方法的实验方案,重点强调其为不同的多重质谱方法制备样品的灵活性。使用plexDIA质谱多重分析方法的一个实例展示了该方法的有效性,plexDIA方法使用非等压质量标签对来自不同样品的肽段进行编码,以实现数据非依赖采集,该方法能够对每个人类细胞中的约3000 - 3700种蛋白质进行准确的定量分析。另一个使用等压质量标签和优先数据采集的实例表明,该方法能够以每天超过1000个单细胞的速度分析1827个单细胞,每个人类细胞的分析深度为800 - 1200种蛋白质。该实验方案通过使用细胞分配和液体处理机器人——CellenONE仪器来实施,并使用现成的耗材,这应有助于该方法的广泛应用。nPOP可应用于所有能够处理成单细胞悬液的样品。制备超过3000个单细胞需要1或2天时间。我们提供了用于质量控制和数据探索的指标和软件(QuantQC R软件包)。QuantQC支持将nPOP稳健扩展到更高plex的试剂,以实现可靠且可扩展的单细胞蛋白质组学研究。